Purinergic Signaling Pathway in Human Olfactory Neuronal Precursor Cells.

Stem Cells Int

Instituto Nacional de Psiquiatría Ramón de la Fuente Muñiz, Laboratorio de Neurofarmacología, Calzada México-Xochimilco 101, San Lorenzo Huipulco, CP 14370 Ciudad de México, Mexico.

Published: April 2019

Extracellular ATP and trophic factors released by exocytosis modulate proliferation, migration, and differentiation in multipotent stem cells (MpSC); however, the purinoceptors mediating this signaling remain uncharacterized in stem cells derived from the human olfactory epithelium (hOE). Our aim was to determine the purinergic pathway in isolated human olfactory neuronal precursor cells (hONPC) that exhibit MpSC features. Cloning by limiting dilution from a hOE heterogeneous primary culture was performed to obtain a culture predominantly constituted by hONPC. Effectiveness of cloning to isolate MpSC-like precursors was corroborated through immunodetection of specific protein markers and by functional criteria such as self-renewal, proliferation capability, and excitability of differentiated progeny. P2 receptor expression in hONPC was determined by Western blot, and the role of these purinoceptors in the ATP-induced exocytosis and changes in cytosolic Ca ([Ca]) were evaluated using the fluorescent indicators FM1-43 and Fura-2 AM, respectively. The clonal culture was enriched with SOX2 and OCT3/4 transcription factors; additionally, the proportion of nestin-immunopositive cells, the proliferation capability, and functionality of differentiated progeny remained unaltered through the long-term clonal culture. hONPC expressed P2X receptor subtypes 1, 3-5, and 7, as well as P2Y2, 4, 6, and 11; ATP induced both exocytosis and a transient [Ca] increase predominantly by activation of metabotropic P2Y receptors. Results demonstrated for the first time that ex vivoexpressed functional P2 receptors in MpSC-like hONPC regulate exocytosis and Ca signaling. This purinergic-triggered release of biochemical messengers to the extracellular milieu might be involved in the paracrine signaling among hOE cells.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC6466875PMC
http://dx.doi.org/10.1155/2019/2728786DOI Listing

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